EP2818324A1 - Printer - Google Patents
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- Publication number
- EP2818324A1 EP2818324A1 EP14162651.5A EP14162651A EP2818324A1 EP 2818324 A1 EP2818324 A1 EP 2818324A1 EP 14162651 A EP14162651 A EP 14162651A EP 2818324 A1 EP2818324 A1 EP 2818324A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- roll
- receiving tape
- roller
- tape roll
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
- 230000002093 peripheral effect Effects 0.000 claims description 32
- 239000010410 layer Substances 0.000 description 27
- 239000000463 material Substances 0.000 description 12
- 238000000926 separation method Methods 0.000 description 12
- 238000007599 discharging Methods 0.000 description 11
- 239000012790 adhesive layer Substances 0.000 description 10
- 230000000694 effects Effects 0.000 description 8
- 238000003780 insertion Methods 0.000 description 8
- 230000037431 insertion Effects 0.000 description 8
- 230000001629 suppression Effects 0.000 description 8
- 230000006866 deterioration Effects 0.000 description 6
- 238000004804 winding Methods 0.000 description 6
- 230000000630 rising effect Effects 0.000 description 5
- 239000004973 liquid crystal related substance Substances 0.000 description 3
- 238000009434 installation Methods 0.000 description 2
- 239000000853 adhesive Substances 0.000 description 1
- 230000001070 adhesive effect Effects 0.000 description 1
- 238000005452 bending Methods 0.000 description 1
- 230000015572 biosynthetic process Effects 0.000 description 1
- 238000000034 method Methods 0.000 description 1
- 239000011347 resin Substances 0.000 description 1
- 229920005989 resin Polymers 0.000 description 1
Images
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B41—PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
- B41J—TYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
- B41J15/00—Devices or arrangements of selective printing mechanisms, e.g. ink-jet printers or thermal printers, specially adapted for supporting or handling copy material in continuous form, e.g. webs
- B41J15/04—Supporting, feeding, or guiding devices; Mountings for web rolls or spindles
- B41J15/042—Supporting, feeding, or guiding devices; Mountings for web rolls or spindles for loading rolled-up continuous copy material into printers, e.g. for replacing a used-up paper roll; Point-of-sale printers with openable casings allowing access to the rolled-up continuous copy material
Definitions
- the present invention relates to a printer that forms desired print on a print-receiving tape.
- a printer that forms print on a print-receiving tape (for example, refer to JP, A, 2006-159413 ).
- a print-receiving tape roll is loaded and used.
- the above described print-receiving tape (tag tape) is wound around the print-receiving tape roll in a rolled form, and desired print is formed on the print-receiving tape that is pulled out from the print-receiving tape roll and is fed.
- the print-receiving tape roll is wound around a substantially cylindrical winding core, and cuts for suppressing the above described print-receiving tape from coming apart are disposed on a tape holder that rotatably supports the winding core.
- the print-receiving tape roll rotates by pull-out of the above described print-receiving tape.
- rotation of the print-receiving tape roll also stops due to the halt of pull-out.
- rotation and stop of the print-receiving tape roll are also reiterated.
- slack occurs in the print-receiving tape due to rotation by inertia of the print-receiving tape roll.
- the above described print-receiving tape wound in the rolled form may come apart in a radial direction. In a case where such coming-apart is generated, meandering of the print-receiving tape occurs at the time of subsequent feeding after the start of printing operation, and there is a possibility of causing irregularity in print positions and deterioration of print quality.
- An object of the present invention is to provide a printer that can achieve coming-apart suppression of a print-receiving tape at the time of printing operation.
- a printer comprising a roll supporting part configured to rotatably support a print-receiving tape roll that winds a print-receiving tape in a rolled form, feeding means configured to pull out and feed the print-receiving tape of the print-receiving tape roll supported by the roll supporting part, printing means configured to perform desired print on the print-receiving tape that is fed out and fed from the print-receiving tape roll by the pull-out of the feeding means, and urging means configured to elastically press the print-receiving tape roll supported by the roll supporting part inward in a radial direction of the print-receiving tape roll while the print-receiving tape being fed out.
- the print-receiving tape roll is loaded and used.
- the print-receiving tape is wound around the print-receiving tape roll in the rolled form, and the print-receiving tape is pulled out and fed by the feeding means. Desired print is formed on the fed print-receiving tape by the printing means.
- the print-receiving tape roll is rotatably supported by the roll supporting part.
- the print-receiving tape roll rotates due to the pull-out of the print-receiving tape by the above described feeding means in a state of being supported by the roll supporting part.
- rotation of the above described print-receiving tape roll also stops due to the halt of the pull-out by the above described feeding means.
- rotation and stop of the print-receiving tape roll are also reiterated.
- the above described print-receiving tape wound in the rolled form may come apart in the radial direction. In the case where such coming-apart is generated, meandering of the print-receiving tape occurs at the time of subsequent feeding, and there is a possibility of causing irregularity in print positions and deterioration of print quality.
- the urging means is disposed in the invention in the present application.
- This urging means elastically presses inward in the radial direction the print-receiving tape roll rotatably supported by the roll supporting part (in a state where the print-receiving tape has been fed out as described above). Consequently, the print-receiving tape can be suppressed from coming apart in the radial direction as described above. As a result, the above described irregularity in print positions and deterioration of print quality can be suppressed.
- coming-apart suppression of the print-receiving tape at the time of printing operation can be achieved.
- a front and rear direction, a right and left direction, and an up and down direction represent directions of arrows appropriately shown in each drawing, such as Fig. 1 .
- the label producing apparatus 1 has: a housing 2 including a front panel 6; and an upper cover unit 5. These housing 2 and upper cover unit 5 are, for example, made of resin.
- the upper cover unit 5 has: a touch panel part 5A; a substantially rectangular liquid crystal panel part 5B; and an operation button part 5C.
- the upper cover unit 5 is turnably connected to the housing 2 through a rotation shaft part 2a (refer to after-mentioned Fig. 4 ) in a rearward end, and thereby the upper cover unit 5 has a structure openable and closable with respect to the housing 2.
- a housing cover part 2A included in a part of the above described housing 2 is configured integrally with a lower portion of the upper cover unit 5, and that the housing cover part 2A is also opened and closed in an integral manner (refer to after-mentioned Figs. 2 , 3 , etc.) at the time of opening and closing of the upper cover unit 5.
- the liquid crystal panel part 5B is turnably connected to the touch panel part 5A through a rotation shaft part 5a (refer to after-mentioned Fig. 4 ) in the rearward end, and thereby the liquid crystal panel part 5B has a structure openable and closable with respect to the touch panel part 5A.
- the operation button part 5C is disposed on an upper surface position closer to a front of the upper cover unit 5, and a power button 7A of the label producing apparatus 1, a status button 7B for displaying a peripheral device actuation state, a feed button 7C, etc. are arranged at the operation button part 5C.
- a release knob 17 is disposed on both right and left side walls of the housing 2. This release knob 17 is upwardly pushed up, thereby locking of the upper cover unit 5 to the housing 2 is released, and the upper cover unit 5 becomes an openable state.
- a first discharging exit 6A On the front panel 6, disposed are: a first discharging exit 6A; and a second discharging exit 6B located at a portion of a lower side than the first discharging exit 6A.
- a portion of the front panel 6 that has the second discharging exit 6B serves as a rotatable openable and closable lid 6C that can be turned to a forward side in order to suit the convenience of installation of an after-mentioned print-receiving tape 3A and paper discharge, for example.
- the first discharging exit 6A is formed of an upper edge of a front surface side of the housing 2, and a lower edge of a front surface side of the above described upper cover unit 5. It is to be noted that a cutting blade 8 is disposed directed downwardly on an inside of the lower edge in the first discharging exit 6A side of the upper cover unit 5 (refer to Figs. 2 , 3 , etc., which will be described later).
- the label producing apparatus 1 has a concave roll containing part 4 at a rear of an internal space of the housing 2.
- the roll containing part 4 contains a roll 3 around which the print-receiving tape 3A with a desired width has been wound in a rolled form so that the print-receiving tape 3A is fed out from an upper side of the roll in this example.
- the roll 3 is rotatably contained in the roll containing part 4 in a state where an axis line of winding of the above described print-receiving tape 3A corresponds to a right and left direction perpendicular to a front-back direction.
- a label mount L is continuously arranged on a separation material layer 3c along a longitudinal direction.
- the label mount L has a two-layer structure in this example, and a print-receiving layer 3a on which desired print is formed by a print head 61, and an adhesive layer 3b are stacked in that order.
- the label mount L is bonded on a one side surface of the separation material layer 3c at a predetermined interval by means of adhesive power of the above described adhesive layer 3b.
- the print-receiving tape 3A has a three-layer structure (refer to the enlarged view in Fig.
- Three support rollers 51 to 53 are disposed on a bottom surface of the roll containing part 4.
- at least two rollers get contact with an outer peripheral surface of the roll 3, thereby drivenly rotate, and rotatably support the roll 3 in a range from a minimum diameter (a state where the print-receiving tape 3A has been consumed most) to a maximum diameter (a state where the print-receiving tape 3A has not been consumed) of the roll 3, in a platen roller 66 being rotationally driven and the print-receiving tape 3A being pulled out from the upper side of the roll 3.
- first support roller 51, a second support roller 52, and a third support roller 53 are arranged in that order along a peripheral direction of the roll 3 from a front (in other words, a pull-out direction, a left side in Fig. 4 ) toward a rear (in other words, an opposite direction of the pull-out direction, a right side in Fig. 4 ).
- These first to third support rollers 51 to 53 are divided into a plurality of portions in the above described right and left direction (in other words, a roll width direction), and only the portion in which the roll 3 has been mounted rotates according to a roll width.
- the second support roller 52 and the third support roller 53 have a positional relation of substantially horizontal to each other, and the first support roller 51 is arranged so as to be located at a higher position than the second support roller 52 and the third support roller 53.
- first guide member 20A that gets contact with an end surface 3R (refer to Fig. 2 ) of a right side of the roll 3 to guide the print-receiving tape 3A to the right and left direction (i.e., the tape width direction, the same hereinafter); and a second guide member 20B that gets contact with an end surface 3L (refer to Fig. 2 ) of a left side of the roll 3 to guide the print-receiving tape 3A to the right and left direction.
- first guide member 20A and second guide member 20B are mutually approachable by advancing and retreating along the above described right and left direction.
- the first guide member 20A then gets contact with the roll 3 from the right side and also, the second guide member 20B gets contact with the roll 3 from the left side, and thereby they guide the print-receiving tape 3A while sandwiching the roll 3 from both sides.
- both the guide members 20A and 20B are disposed advanceable and retreatable along the right and left direction, the both guide members 20A and 20B are advanced and retreated according to the width of the contained roll 3 to adjust a position of the roll 3, thereby the roll 3 with an arbitrary width is sandwiched by the both guide members 20A and 20B, and the width direction of the print-receiving tape 3A can be guided. It is to be noted that will be described later details of a support structure for advancing and retreating these guide members 20A and 20B.
- the above described print head 61 is disposed on a lower side of a front end of the upper cover unit 5.
- the above described platen roller 66 is disposed on an upper side of a front end of the housing 2 so as to face the print head 61 in the up and down direction.
- a roller shaft 66A of the platen roller 66 is rotatably supported by a bracket 65 (refer to Fig. 4 ) disposed on both ends in an axis direction and also, a gear (not shown) that drives the platen roller 66 is fixed to one shaft end of the roller shaft 66A.
- an arrangement position of the platen roller 66 in the housing 2 corresponds to an attachment position of the print head 61 in the upper cover unit 5. Additionally, the upper cover unit 5 is closed, thereby the print-receiving tape 3A is sandwiched by the print head 61 disposed on an upper cover unit 5 side, and the platen roller 66 disposed on a housing 2 side, and the label producing apparatus 1 becomes a state where printing by the print head 61 can be performed.
- the upper cover unit 5 is closed, thereby the above described gear fixed to the roller shaft 66A of the platen roller 66 meshes with a gear train, which is not shown, of the housing 2 side, and the platen roller 66 is rotationally driven, for example, by a platen roller motor (not shown) including a stepping motor etc. Consequently, the platen roller 66 feeds out the print-receiving tape 3A from the upper side in this example of the roll 3 contained in the roll containing part 4 (however, may feed it out from a lower side), and feeds the print-receiving tape 3A with a posture in which the tape width direction of the print-receiving tape 3A is set as the right and left direction.
- an intermediate portion of the print head 61 is pivotally supported and also, the print head 61 is installed downwardly urged by a suitable spring member.
- the upper cover unit 5 is set as an opened state by the above described release knob 17, and thereby the print head 61 becomes a state of being spaced apart from the platen roller 66 (refer to Fig. 3 etc.). Meanwhile, the upper cover unit 5 is closed, thereby the print head 61 presses and urges the print-receiving tape 3A to the platen roller 66 by an urging force of the spring member, and becomes a state where printing can be performed.
- the print-receiving tape 3A is configured by the above described roll 3 being wound therearound in the rolled form so that the above described label mount L is located at an outside in the radial direction (however, when the print-receiving tape 3A is fed out from the lower side of the roll 3 as described above, the above described label mount L is located at an inside in the radial direction).
- the print-receiving tape 3A is fed out from the upper side of the roll 3 in a state where a surface of a label mount L side is set as an upward side, and print is formed on the print-receiving tape 3A by the print head 61 arranged at an upper side of the print-receiving tape 3A.
- a release plate 200 to peel off the above described print-receiving layer 3a and adhesive layer 3b from the separation material layer 3c by folding the separation material layer 3c to a downward side of the platen roller 66.
- the printed print-receiving layer 3a and adhesive layer 3b that have been peeled off from the separation material layer 3c by the above described release plate 200 are discharged to an outside of the housing 2 through the above described first discharging exit 6A located at a further forward side of the release plate 200 (refer to an alternate long and short dash line in Fig. 4 ).
- the cutting blade 8 is used for an operator cutting at a desired position the print-receiving layer 3a and the adhesive layer 3b that are discharged to the outside of the housing 2 through the above described first discharging exit 6A.
- a pinch roller 201 that feeds the separation material layer 3c folded to the downward side by the above described release plate 200 while pinching it between the platen roller 66 and itself.
- the above described separation material layer 3c fed by the above described pinch roller 201 is discharged to the outside of the housing 2 from the above described second discharging exit 6B (refer to a broken line in Fig. 4 ).
- the pinch roller 201 is disposed on the above described openable and closable lid 6C through a suitable support part (not shown).
- a pressing roller 31 is disposed near a feeding-out position of the print-receiving tape 3A in the roll 3 contained in the roll containing part 4, the position being closer to a rearward side than the platen roller 66.
- This pressing roller 31 is rotatably supported at a tip end of a support member 32 downwardly extended from the upper cover unit 5 toward a vicinity of the above described feeding-out position.
- the upper cover unit 5 is set as the opened state by the release knob 17, and thereby the support member 32 and the pressing roller 31 also become a state of being spaced apart from the roll containing part 4 (refer to Figs. 2 , 3 , 5 , etc.).
- rail members 11 are disposed on the bottom surface of the roll containing part 4. Meanwhile, corresponding to this, the guide members 20A and 20B have concave guide fitting parts 24 in centers of lower ends thereof. Additionally, the above described rail members 11 are fitted in the above described guide fitting parts 24 of the guide members 20A and 20B along the width direction (i.e., the above described right and left direction) of the roll 3, guide the guide members 20A and 20B while allowing advancing and retreating thereof, and hold positions of the guide members 20A and 20B in an advancing and retreating direction. It is to be noted that although only a detailed structure of the guide member 20B is shown in Fig. 5 , the guide member 20A also has a substantially equal structure (except that right and left are reversed).
- rack members 406 and 407 as shown in Fig. 6 are projectingly disposed on each one side with respect to the guide fitting parts 24 in a horizontal direction. These rack members 406 and 407 are disposed so as to alternately face with respect to each of the guide fitting parts 24 of the guide members 20A and 20B. Additionally, as shown in Fig. 6 , both rack members 406 and 407 have meshed with a central gear 408 from both sides in a lower surface side of the roll containing part 4.
- the pair of guide members 20A and 20B is disposed mutually approachable by interlockingly advancing and retreating in the width direction (right and left direction) of the roll 3 with respect to a reference position (a center position in the right and left direction), and defines a position in the width direction of the print-receiving tape 3A fed out from the roll 3 while pinching the contained roll 3.
- guide projecting parts 405 are disposed projecting inwardly so as to mutually face along the above described right and left direction.
- the guide projecting parts 405 get contact with an end of the width direction of the print-receiving tape 3A that is fed out from the roll 3 from an upward side, and guide it. Consequently, flapping of the print-receiving tape 3A in the up and down direction can be pressed at both ends of the print-receiving tape 3A fed out from the roll 3 that rotates within the roll containing part 4.
- the print-receiving layer 3a and the adhesive layer 3b are peeled off from the separation material layer 3c as described above.
- the print-receiving layer 3a and the adhesive layer 3b (in other words, the label mount L) that have been peeled off by the release plate 200 as described above are discharged to the outside of the housing 2 from the first discharging exit 6A, and are used as print labels. It is to be noted that in Fig.
- a feeding path of the print-receiving layer 3a and the adhesive layer 3b that have been peeled off is shown by the alternate long and short dash line, and that a feeding path of the peeled-off separation material layer 3c is shown by the broken line, respectively.
- a feature of the present embodiment lies in suppressing the coming-apart of the above described print-receiving tape 3A in the radial direction in the roll containing part 4.
- details of the feature will be explained in order.
- the roll 3 is rotatably supported by the roll containing part 4.
- the roll 3 rotates by the pull-out of the print-receiving tape 3A by means of the above described platen roller 66 in a state of being supported in the roll containing part 4.
- rotation of the roll 3 also stops by the halt of the pull-out by means of the above described platen roller 66.
- rotation and stop of the roll 3 are also reiterated.
- the above described print-receiving tape 3A wound in the rolled form may come apart in the radial direction. In a case where such coming-apart is generated, meandering of the print-receiving tape 3A occurs at the time of subsequent feeding, and there is a possibility of causing irregularity in print positions and deterioration of print quality.
- the spring 400 is disposed on the roll containing part 4 as shown in Figs. 7 and 8 .
- a detailed structure and function of the spring 400 will be explained using Figs. 9 , 10A and 10B , and the above described Figs. 7 and 8 .
- the spring 400 is configured integrally with an elastic thin member, such as a film, in this example.
- This spring 400 includes, as shown in Fig. 9 : a substantially plate-like base part 400a; a bent part 40Oc1 disposed on an end of the base part 400a; a rising part 400b disposed so as to rise from the base part 400a through the bent part 400c1; a bent part 400c2 disposed on an end of the rising part 400b; a folded part 400d; and a locking part 400e.
- a concave part 400ab is disposed on one end side edge of the base part 400a.
- This concave part 400ab has a width direction size that is slightly larger than the above described folded part 400d and is smaller than the locking part 400e.
- the folded part 400d is disposed folded so as to configure substantially an inverted V shape with the rising part 400b through the bent part 400c2.
- the locking part 400e is disposed on a tip of the folded part 400d so as to have a width direction size wider than the above described rising part 400b, bent parts 400e1 and 400c2, and folded part 400d that have a same width direction (corresponding to the above described right and left direction, the same hereinafter) size as one another.
- a concave part 4P for containing the spring 400 disposed closer to a forward side than the above described first support roller 51 in the roll containing part 4, disposed are: a concave part 4P for containing the spring 400; and a spring insertion hole 4Q disposed so as to downwardly penetrate the concave part 4P.
- the spring insertion hole 4Q includes: an insertion part 4Qa having a width direction size substantially equal (slightly larger) to (than) the above described locking part 400e; and a part to be locked 4Qb that is located at substantially a downward side of the insertion part 4Qa and has a width direction size smaller than the insertion part 4Qa and the above described locking part 400e.
- the concave part 4P includes: a base part roll containing part 4Pa having a width direction size substantially equal (slightly larger) to (than) the above described base part 400a; and a bent part roll containing part 4Pb having a width direction size substantially equal (slightly larger) to (than) the above described bent part 400c1.
- the above described locking part 400e is inserted in the above described insertion part 400Qa to be projected to a back side (i.e., a downward side) of the concave part 4P in a state where the above described folded part 400d is introduced to the above described concave part 400ab and subsequently, the locking part 400e is further slid downwardly. Since the part to be locked 4Qb has the width direction size smaller than the insertion part 4Qa and the above described locking part 400e as described above, by the above, the locking part 400e becomes a state of being locked at a back side (i.e., a downward side) of the part to be locked 4Qb.
- the base part 400a and the bent part 400c1 are introduced to the base part roll containing part 4Pa and the bent part roll containing part 4Pb, respectively, contained, and fixed. Due to this containment, a surface 400aa of the base part 400a becomes substantially a same surface (a state of neither projecting nor denting) as a circular arc-shaped bottom surface 4A of the roll containing part 4.
- the insertion part 4Qa is blocked by the above described containment of the base part 400a (refer to Fig. 7 ), and thereby achieved is slip-off stop of the locking part 400e in the state of being locked at the back side of the part to be locked 4Qb as described above.
- the spring 400 elastically deforms in a state where the base part 400a is fixed to the base part roll containing part 4Pa (particularly, a bending angle of the bent part 400c1 changes), and thereby is displaced in a range from a state (refer to Fig. 10A ) where the above described inverted V shape formed by the above described rising part 400b, bent part 400c2, and folded part 400d is completely appeared in the roll containing part 4 to a state where the folded part 400d gets out to a downward side of the roll containing part 4 (refer to Fig. 10B ). Consequently, when the roll 3 is contained in the roll containing part 4, the spring 400, as shown in Fig.
- the spring 400 can elastically press the roll 3 from which the print-receiving tape 3A is fed out, inward in the radial direction of the roll 3.
- the spring 400 is arranged so as to be located closer to the forward side than the first support roller 51 in order to press an outer peripheral surface of a portion of the roll 3 closer to the forward side (left side in Figs. 10A and 10B ) than a roll center O (refer to Fig. 10B ).
- a roller width of the above described pressing roller 31 is set to be smaller than an interval between the above described guide members 20A and 20B in a state where the guide members 20A and 20B are interlocked to be approached to a minimum width (in a state of pinching the roll 3 with a minimum tape width).
- the spring 400 is, as illustrated, arranged so as to be located between the guide members 20A and 20B when these guide members 20A and 20B are in a closest state.
- the spring 400 elastically presses the rotatably supported roll 3 inward in the radial direction (in the state where the print-receiving tape 3A has been fed out as described above). Consequently, the print-receiving tape 3A can be suppressed from coming apart in the radial direction as described above. As a result, the above described irregularity in print positions and deterioration of print quality can be suppressed.
- the roll 3 is rotatably carried on the support rollers 51, 52, and 53 in the roll containing part 4. As described above, in printing operation, the roll 3 rotates by the pull-out of the print-receiving tape 3A, and the support rollers 51, 52, and 53 rotate while being in contact with the outer peripheral surface of the rotating roll 3. In a case of such a support mode, since the roll 3 becomes a state of not being constrained at all in the radial direction other than at contact points with the support rollers 51, 52, and 53 in a lower portion, the above described coming-apart in the radial direction tends to occur. Accordingly, particularly effective is an effect of coming-apart suppression by the above described pressing in the radial direction by means of the spring 400.
- the self-weight as described above does not act on the feeding-out position and the vicinity thereof, and thus a possibility that a position of the roll 3 fluctuates because of the coming-loose of the roll 3 from the support rollers 51, 52, and 53, etc. due to the above described pull-out.
- the spring 400 also has an effect of being able to suppress position fluctuation of the roll 3 by the pressing in the radial direction in addition to the coming-apart suppression action as described above.
- a force pulling the roll 3 in the pull-out direction (a force toward the forward side, i.e., the left side in Fig. 4 ) may act due to the above described pull-out.
- the spring 400 presses in the radial direction the portion of the side closer to the above described pull-out direction than the roll center O of the roll 3. Consequently, the roll 3 can be pressed in a direction opposite to the pull-out direction although moving in the pull-out direction (forward) due to the above described force. As a result, the above described position fluctuation of the roll 3 can be reliably suppressed.
- an outer peripheral diameter of the roll 3 becomes gradually smaller from a maximum value to an intermediate value, and then to a minimum value.
- the roll 3 can be stably supported by taking a large distance between these two support rollers even when the outer peripheral diameter of the roll 3 is large, there is a problem that the roll 3 drops off at the same time when the outer peripheral diameter of the roll 3 becomes smaller than a distance between the above described rollers, when the distance between the above described rollers is larger than the minimum value of the outer peripheral diameter of the roll 3. Meanwhile, although drop-off of the roll 3 can be suppressed by making smaller the distance between the two support rollers than the minimum value of the outer peripheral diameter of the roll 3, there is a problem in this case that the roll 3 cannot be stably supported when the outer peripheral diameter of the roll 3 is large.
- three support rollers are disposed in the roll containing part 4 in order of the first support roller 51, the second support roller 52, and the third support roller 53 from the above described pull-out direction side toward the opposite side.
- the second support roller 52 and the third support roller 53 are arranged to have the positional relation of substantially horizontal to each other, and the first support roller 51 is arranged at the higher position than the second support roller 52 and the third support roller 53 (refer to Fig. 4 etc.). Consequently, the roll 3 is supported by the first support roller 51 and the third support roller 53 before the outer peripheral diameter of the roll 3 falls in a range from the maximum value to the intermediate value (a state shown in Fig.
- the roll 3 is supported by the three of the first support roller 51, the second support roller 52, and the third support roller 53 when the outer peripheral diameter of the roll 3 becomes the intermediate value, and the roll 3 can be supported by the second support roller 52 and the third support roller 53 until the outer peripheral diameter of the roll 3 becomes the minimum value after becoming smaller than the intermediate value.
- the setting configurations of the support rollers that support the roll 3 can be made to be different from each other according to the outer peripheral diameter of the roll 3. Since the distance between the rollers can be taken large by supporting the roll 3 by means of the first support roller 51 and the third support roller 53 in the range before the outer peripheral diameter of the roll 3 becomes the intermediate value from the maximum value, which is the comparatively large range, the roll 3 can be stably supported.
- the roll 3 is supported by the second support roller 52 and the third support roller 53 in a range until the outer peripheral diameter of the roll 3 becomes the minimum value after becoming smaller than the intermediate value, which is the comparatively small range, drop-off of the roll 3 can be suppressed even though the outer peripheral diameter of the roll 3 becomes the minimum value by setting the distance between these rollers to be smaller than the minimum value of the outer peripheral diameter of the roll 3. Accordingly, in addition to the suppression effect of the position fluctuation of the roll 3 by means of the above described spring 400, the roll 3 can be stably supported also by these first to third support rollers 51, 52, and 53 (regardless of the outer peripheral diameter of the roll 3).
- the outer peripheral diameter of the roll 3 is the intermediate value. Namely, in the print-receiving tape 3A being fed out from the roll 3 due to the above described pull-out at the time of feeding, generally, the larger the outer peripheral diameter of the roll 3 is, and the more the number of support rollers that support the roll 3 is, the more increases a load on the feeding-out of the tape due to inertia by the self-weight of the roll 3 and friction of the support rollers, etc.
- the roll 3 when the outer peripheral diameter of the roll 3 becomes the intermediate value as described above, the roll 3 is supported by the three of the first support roller 51, the second support roller 52, and the third support roller 53.
- the roll outer peripheral diameter in the case where the number of support rollers that support the roll 3 is the maximum number of three can be set as the intermediate value, and the tape load can be significantly reduced as compared with the case of the maximum value.
- the load at the time of feeding out the print-receiving tape 3A from the roll 3 can be reduced.
- similar effects of meandering suppression and improvement in print quality can be obtained also by these first to third support rollers 51, 52, and 53.
- the pair of guide members 20A and 20B that gets contact with the both-side end surfaces of the print-receiving tape 3A fed out from the roll 3 and guides the print-receiving tape 3A is disposed in an approachable manner in the width direction of the roll 3. Consequently, even when plural types of rolls 3 having various tape widths are used, each tape can be reliably guided from both sides in a width direction, and smooth tape feeding can be performed.
- the spring 400 is, as shown in Fig. 11 , arranged so as to be located between the pair of guide members 20A and 20B in the state where the pair of guide members 20A and 20B is the closest to each other. Consequently, the spring 400 can be arranged at the roll containing part 4 without impeding a function of guiding the above described print-receiving tape 3A by making the above described pair of guide members 20A and 20B approach and separate to/from each other.
- the present invention is not limited to this. Namely, the present invention can be applied to a configuration in which the roll is, for example, wound around a substantially cylindrical winding core, and in which the winding core is rotatably supported by the housing side through the tape holder. In this case, the winding core and the tape holder are included in the roll supporting part, and an effect similar to the above can be obtained.
- the present invention is not limited to this. Namely, in a case where the label mounts L (so-called die-cut labels) previously separated as a desired size corresponding to a label are continuously arranged on the tape fed out from the roll 3, only the label mount (on which corresponding print has been made) may be peeled from the tape to produce a print label after the tape is discharged from the discharging exit 6A without cutting the tape by the cutting blade 8, and the present invention can be applied also to the tape with the label mounts as described above.
- the label mounts L so-called die-cut labels
- the present invention is not limited to this, and the present invention may be applied to a system in which printing is performed on cover films different from the print-receiving layer 3a, and the cover films are pasted.
- a roll is not limited to a roll that can be attached and detached to/from a label producing apparatus 1 main body side like the above described roll 3, either, and it can be also considered that a roll is disposed as a so-called installation type or integrated type that cannot be attached and detached to/from the apparatus main body side. A similar effect is obtained also in this case.
- the present invention is not limited to this. Namely, as one example of the printer, for example, the present invention may be applied to a printer that forms images and prints characters on usual print-receiving papers of sizes, such as an A4, A3, a B4, and B5 sizes, and a portable printer driven by a battery power source. A similar effect is obtained also in this case.
Landscapes
- Handling Of Continuous Sheets Of Paper (AREA)
Abstract
Description
- The present invention relates to a printer that forms desired print on a print-receiving tape.
- There has been known a printer that forms print on a print-receiving tape (for example, refer to
JP, A, 2006-159413 - In the printer as described above, during printing operation, the print-receiving tape roll rotates by pull-out of the above described print-receiving tape. When printing operation stops, rotation of the print-receiving tape roll also stops due to the halt of pull-out. When execution and stop of the printing operation are repeated, rotation and stop of the print-receiving tape roll are also reiterated. At this time, slack occurs in the print-receiving tape due to rotation by inertia of the print-receiving tape roll. As a result, in the print-receiving tape roll, the above described print-receiving tape wound in the rolled form may come apart in a radial direction. In a case where such coming-apart is generated, meandering of the print-receiving tape occurs at the time of subsequent feeding after the start of printing operation, and there is a possibility of causing irregularity in print positions and deterioration of print quality.
- In the above described prior art, although it is considered to suppress coming-apart of the print-receiving tape at the time of non-operation when the printing operation as described above is not performed and at the time of attachment and detachment of the tape holder, it has not been considered to achieve coming-apart suppression of the print-receiving tape at the time of the printing operation as described above.
- An object of the present invention is to provide a printer that can achieve coming-apart suppression of a print-receiving tape at the time of printing operation.
- In order to achieve the above-described object, according to the present invention, there is provided a printer comprising a roll supporting part configured to rotatably support a print-receiving tape roll that winds a print-receiving tape in a rolled form, feeding means configured to pull out and feed the print-receiving tape of the print-receiving tape roll supported by the roll supporting part, printing means configured to perform desired print on the print-receiving tape that is fed out and fed from the print-receiving tape roll by the pull-out of the feeding means, and urging means configured to elastically press the print-receiving tape roll supported by the roll supporting part inward in a radial direction of the print-receiving tape roll while the print-receiving tape being fed out.
- In a printer of the invention in the present application, the print-receiving tape roll is loaded and used. The print-receiving tape is wound around the print-receiving tape roll in the rolled form, and the print-receiving tape is pulled out and fed by the feeding means. Desired print is formed on the fed print-receiving tape by the printing means.
- At this time, the print-receiving tape roll is rotatably supported by the roll supporting part. During the printing operation as described above, the print-receiving tape roll rotates due to the pull-out of the print-receiving tape by the above described feeding means in a state of being supported by the roll supporting part. When printing operation stops, rotation of the above described print-receiving tape roll also stops due to the halt of the pull-out by the above described feeding means. When execution and stop of the printing operation are repeated, rotation and stop of the print-receiving tape roll are also reiterated. As a result, in the print-receiving tape roll, the above described print-receiving tape wound in the rolled form may come apart in the radial direction. In the case where such coming-apart is generated, meandering of the print-receiving tape occurs at the time of subsequent feeding, and there is a possibility of causing irregularity in print positions and deterioration of print quality.
- Consequently, the urging means is disposed in the invention in the present application. This urging means elastically presses inward in the radial direction the print-receiving tape roll rotatably supported by the roll supporting part (in a state where the print-receiving tape has been fed out as described above). Consequently, the print-receiving tape can be suppressed from coming apart in the radial direction as described above. As a result, the above described irregularity in print positions and deterioration of print quality can be suppressed.
- According to the present invention, coming-apart suppression of the print-receiving tape at the time of printing operation can be achieved.
-
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Fig. 1 is a perspective view showing an appearance of a label producing apparatus of one embodiment of the present invention. -
Fig. 2 is a perspective view representing a state where an upper cover unit is opened and a roll is loaded in the label producing apparatus. -
Fig. 3 is a perspective view representing a state where the upper cover unit is opened and the roll is removed in the label producing apparatus. -
Fig. 4 is a side sectional view representing an entire structure of the label producing apparatus. -
Fig. 5 is a perspective view representing the state where the upper cover unit is opened and the roll is removed in the label producing apparatus. -
Fig. 6 is a perspective view in a state where a roll containing part on which a guide member is disposed is seen from a lower surface side. -
Fig. 7 is a perspective view of the label producing apparatus representing a front side portion of the roll containing part in which the upper cover unit is omitted, the roll containing part being in a state where a spring is attached. -
Fig. 8 is a perspective view of the label producing apparatus representing the front side portion of the roll containing part in which the upper cover unit is omitted, the roll containing part being in a state where the spring is removed. -
Fig. 9 is a perspective view representing a detailed structure of the spring. -
Fig. 10A is a main portion side sectional view of the label producing apparatus representing a state where the spring has been installed at the roll containing part. -
Fig. 10B is a main portion side sectional view of the label producing apparatus representing a behavior of roll pressing by the spring. -
Fig. 11 is a plan view representing a closest state of a pair of guide members. - Hereinafter, one embodiment of the present invention will be explained with reference to drawings.
- First, using
Fig. 1 , will be explained an appearance schematic configuration of alabel producing apparatus 1 of the present embodiment. It is to be noted that in the following explanation, a front and rear direction, a right and left direction, and an up and down direction represent directions of arrows appropriately shown in each drawing, such asFig. 1 . - In
Fig. 1 , thelabel producing apparatus 1 has: ahousing 2 including afront panel 6; and anupper cover unit 5. Thesehousing 2 andupper cover unit 5 are, for example, made of resin. Theupper cover unit 5 has: atouch panel part 5A; a substantially rectangular liquidcrystal panel part 5B; and anoperation button part 5C. - The
upper cover unit 5 is turnably connected to thehousing 2 through arotation shaft part 2a (refer to after-mentionedFig. 4 ) in a rearward end, and thereby theupper cover unit 5 has a structure openable and closable with respect to thehousing 2. It is to be noted that ahousing cover part 2A included in a part of the above describedhousing 2 is configured integrally with a lower portion of theupper cover unit 5, and that thehousing cover part 2A is also opened and closed in an integral manner (refer to after-mentionedFigs. 2 ,3 , etc.) at the time of opening and closing of theupper cover unit 5. - The liquid
crystal panel part 5B is turnably connected to thetouch panel part 5A through arotation shaft part 5a (refer to after-mentionedFig. 4 ) in the rearward end, and thereby the liquidcrystal panel part 5B has a structure openable and closable with respect to thetouch panel part 5A. - The
operation button part 5C is disposed on an upper surface position closer to a front of theupper cover unit 5, and apower button 7A of thelabel producing apparatus 1, astatus button 7B for displaying a peripheral device actuation state, afeed button 7C, etc. are arranged at theoperation button part 5C. - A
release knob 17 is disposed on both right and left side walls of thehousing 2. Thisrelease knob 17 is upwardly pushed up, thereby locking of theupper cover unit 5 to thehousing 2 is released, and theupper cover unit 5 becomes an openable state. - On the
front panel 6, disposed are: a firstdischarging exit 6A; and a seconddischarging exit 6B located at a portion of a lower side than the firstdischarging exit 6A. In addition, a portion of thefront panel 6 that has the seconddischarging exit 6B serves as a rotatable openable andclosable lid 6C that can be turned to a forward side in order to suit the convenience of installation of an after-mentioned print-receivingtape 3A and paper discharge, for example. - When the
upper cover unit 5 is set as a closed state, the firstdischarging exit 6A is formed of an upper edge of a front surface side of thehousing 2, and a lower edge of a front surface side of the above describedupper cover unit 5. It is to be noted that acutting blade 8 is disposed directed downwardly on an inside of the lower edge in the firstdischarging exit 6A side of the upper cover unit 5 (refer toFigs. 2 ,3 , etc., which will be described later). - <Internal structure>
- Subsequently, an internal structure of the
label producing apparatus 1 of the present embodiment will be explained usingFigs. 2 to 5 . - As shown in
Figs. 2 and3 , thelabel producing apparatus 1 has a concaveroll containing part 4 at a rear of an internal space of thehousing 2. Theroll containing part 4 contains aroll 3 around which the print-receivingtape 3A with a desired width has been wound in a rolled form so that the print-receivingtape 3A is fed out from an upper side of the roll in this example. Theroll 3 is rotatably contained in theroll containing part 4 in a state where an axis line of winding of the above described print-receivingtape 3A corresponds to a right and left direction perpendicular to a front-back direction. - In the print-receiving
tape 3A included in theroll 3, as shown in an enlarged view inFig. 4 , a label mount L is continuously arranged on aseparation material layer 3c along a longitudinal direction. Namely, the label mount L has a two-layer structure in this example, and a print-receivinglayer 3a on which desired print is formed by aprint head 61, and anadhesive layer 3b are stacked in that order. Additionally, the label mount L is bonded on a one side surface of theseparation material layer 3c at a predetermined interval by means of adhesive power of the above describedadhesive layer 3b. Namely, the print-receivingtape 3A has a three-layer structure (refer to the enlarged view inFig. 4 ) of the print-receivinglayer 3a, theadhesive layer 3b, and theseparation material layer 3c in a portion to which the label mount L has been bonded, and has a one-layer structure of only theseparation material layer 3c in a portion to which the label mount L has not been bonded (i.e., the portion between the label mounts L). The label mount L in which printing is completed is eventually pasted on an adherend as a print label by being peeled from theseparation material layer 3c. It is to be noted that inFig. 4 , illustration of an after-mentionedspring 400 is omitted for preventing complication of illustration. - Three
support rollers 51 to 53 are disposed on a bottom surface of theroll containing part 4. In thesupport rollers 51 to 53, at least two rollers get contact with an outer peripheral surface of theroll 3, thereby drivenly rotate, and rotatably support theroll 3 in a range from a minimum diameter (a state where the print-receivingtape 3A has been consumed most) to a maximum diameter (a state where the print-receivingtape 3A has not been consumed) of theroll 3, in aplaten roller 66 being rotationally driven and the print-receivingtape 3A being pulled out from the upper side of theroll 3. Positions of these three support rollers in a peripheral direction with respect to theroll 3 respectively differ, and afirst support roller 51, asecond support roller 52, and athird support roller 53 are arranged in that order along a peripheral direction of theroll 3 from a front (in other words, a pull-out direction, a left side inFig. 4 ) toward a rear (in other words, an opposite direction of the pull-out direction, a right side inFig. 4 ). These first tothird support rollers 51 to 53 are divided into a plurality of portions in the above described right and left direction (in other words, a roll width direction), and only the portion in which theroll 3 has been mounted rotates according to a roll width. In addition, thesecond support roller 52 and thethird support roller 53 have a positional relation of substantially horizontal to each other, and thefirst support roller 51 is arranged so as to be located at a higher position than thesecond support roller 52 and thethird support roller 53. - Meanwhile, on the
roll containing part 4, also disposed are: afirst guide member 20A that gets contact with anend surface 3R (refer toFig. 2 ) of a right side of theroll 3 to guide the print-receivingtape 3A to the right and left direction (i.e., the tape width direction, the same hereinafter); and asecond guide member 20B that gets contact with anend surface 3L (refer toFig. 2 ) of a left side of theroll 3 to guide the print-receivingtape 3A to the right and left direction. Thesefirst guide member 20A andsecond guide member 20B are mutually approachable by advancing and retreating along the above described right and left direction. Thefirst guide member 20A then gets contact with theroll 3 from the right side and also, thesecond guide member 20B gets contact with theroll 3 from the left side, and thereby they guide the print-receivingtape 3A while sandwiching theroll 3 from both sides. As described above, since both theguide members guide members roll 3 to adjust a position of theroll 3, thereby theroll 3 with an arbitrary width is sandwiched by the bothguide members tape 3A can be guided. It is to be noted that will be described later details of a support structure for advancing and retreating theseguide members - Meanwhile, as shown in
Fig. 4 , the above describedprint head 61 is disposed on a lower side of a front end of theupper cover unit 5. In addition, the above describedplaten roller 66 is disposed on an upper side of a front end of thehousing 2 so as to face theprint head 61 in the up and down direction. Aroller shaft 66A of theplaten roller 66 is rotatably supported by a bracket 65 (refer toFig. 4 ) disposed on both ends in an axis direction and also, a gear (not shown) that drives theplaten roller 66 is fixed to one shaft end of theroller shaft 66A. - At this time, an arrangement position of the
platen roller 66 in thehousing 2 corresponds to an attachment position of theprint head 61 in theupper cover unit 5. Additionally, theupper cover unit 5 is closed, thereby the print-receivingtape 3A is sandwiched by theprint head 61 disposed on anupper cover unit 5 side, and theplaten roller 66 disposed on ahousing 2 side, and thelabel producing apparatus 1 becomes a state where printing by theprint head 61 can be performed. In addition, theupper cover unit 5 is closed, thereby the above described gear fixed to theroller shaft 66A of theplaten roller 66 meshes with a gear train, which is not shown, of thehousing 2 side, and theplaten roller 66 is rotationally driven, for example, by a platen roller motor (not shown) including a stepping motor etc. Consequently, theplaten roller 66 feeds out the print-receivingtape 3A from the upper side in this example of theroll 3 contained in the roll containing part 4 (however, may feed it out from a lower side), and feeds the print-receivingtape 3A with a posture in which the tape width direction of the print-receivingtape 3A is set as the right and left direction. - Although not particularly shown, an intermediate portion of the
print head 61 is pivotally supported and also, theprint head 61 is installed downwardly urged by a suitable spring member. Theupper cover unit 5 is set as an opened state by the above describedrelease knob 17, and thereby theprint head 61 becomes a state of being spaced apart from the platen roller 66 (refer toFig. 3 etc.). Meanwhile, theupper cover unit 5 is closed, thereby theprint head 61 presses and urges the print-receivingtape 3A to theplaten roller 66 by an urging force of the spring member, and becomes a state where printing can be performed. - It is to be noted that the print-receiving
tape 3A is configured by the above describedroll 3 being wound therearound in the rolled form so that the above described label mount L is located at an outside in the radial direction (however, when the print-receivingtape 3A is fed out from the lower side of theroll 3 as described above, the above described label mount L is located at an inside in the radial direction). As a result, the print-receivingtape 3A is fed out from the upper side of theroll 3 in a state where a surface of a label mount L side is set as an upward side, and print is formed on the print-receivingtape 3A by theprint head 61 arranged at an upper side of the print-receivingtape 3A. - In addition, on a forward side closer than the
platen roller 66, disposed is arelease plate 200 to peel off the above described print-receivinglayer 3a andadhesive layer 3b from theseparation material layer 3c by folding theseparation material layer 3c to a downward side of theplaten roller 66. The printed print-receivinglayer 3a andadhesive layer 3b that have been peeled off from theseparation material layer 3c by the above describedrelease plate 200 are discharged to an outside of thehousing 2 through the above described first dischargingexit 6A located at a further forward side of the release plate 200 (refer to an alternate long and short dash line inFig. 4 ). Thecutting blade 8 is used for an operator cutting at a desired position the print-receivinglayer 3a and theadhesive layer 3b that are discharged to the outside of thehousing 2 through the above described first dischargingexit 6A. - Meanwhile, on a lower part of the
platen roller 66, disposed is a pinch roller 201 that feeds theseparation material layer 3c folded to the downward side by the above describedrelease plate 200 while pinching it between theplaten roller 66 and itself. The above describedseparation material layer 3c fed by the above described pinch roller 201 is discharged to the outside of thehousing 2 from the above described second dischargingexit 6B (refer to a broken line inFig. 4 ). It is to be noted that the pinch roller 201 is disposed on the above described openable andclosable lid 6C through a suitable support part (not shown). - In addition, a
pressing roller 31 is disposed near a feeding-out position of the print-receivingtape 3A in theroll 3 contained in theroll containing part 4, the position being closer to a rearward side than theplaten roller 66. Thispressing roller 31 is rotatably supported at a tip end of asupport member 32 downwardly extended from theupper cover unit 5 toward a vicinity of the above described feeding-out position. Theupper cover unit 5 is set as the opened state by therelease knob 17, and thereby thesupport member 32 and thepressing roller 31 also become a state of being spaced apart from the roll containing part 4 (refer toFigs. 2 ,3 ,5 , etc.). - Subsequently, using
Fig. 6 and the above describedFig. 5 , will be explained details of a support structure of advancing and retreating of bothguide members third support rollers - As shown in the above described
Fig. 5 ,rail members 11 are disposed on the bottom surface of theroll containing part 4. Meanwhile, corresponding to this, theguide members fitting parts 24 in centers of lower ends thereof. Additionally, the above describedrail members 11 are fitted in the above described guidefitting parts 24 of theguide members roll 3, guide theguide members guide members guide member 20B is shown inFig. 5 , theguide member 20A also has a substantially equal structure (except that right and left are reversed). - At this time, on the
guide members rack members Fig. 6 are projectingly disposed on each one side with respect to the guidefitting parts 24 in a horizontal direction. Theserack members fitting parts 24 of theguide members Fig. 6 , both rackmembers central gear 408 from both sides in a lower surface side of theroll containing part 4. As a result, only one of theguide members guide member 20A in this example) is moved to one side along therail 11, and interlockingly with the movement, the other (theguide member 20B in this example) moves in the other direction along the rail through thegear 408. - In the above manner, the pair of
guide members roll 3 with respect to a reference position (a center position in the right and left direction), and defines a position in the width direction of the print-receivingtape 3A fed out from theroll 3 while pinching the containedroll 3. - In addition, on each of the
guide members guide projecting parts 405 are disposed projecting inwardly so as to mutually face along the above described right and left direction. Theguide projecting parts 405 get contact with an end of the width direction of the print-receivingtape 3A that is fed out from theroll 3 from an upward side, and guide it. Consequently, flapping of the print-receivingtape 3A in the up and down direction can be pressed at both ends of the print-receivingtape 3A fed out from theroll 3 that rotates within theroll containing part 4. - In the above described basic configuration, when the
upper cover unit 5 is closed, and theplaten roller 66 is rotated and driven by the above described platen roller motor, the print-receivingtape 3A is pulled. Consequently, the print-receivingtape 3A is fed out from theroll 3 with being contacted from an upward side by the above describedpressing roller 31, while the width direction of the print-receivingtape 3A being guided by theguide members print head 61 on the print-receivingtape 3A fed out from theroll 3 and subsequently, the print-receivingtape 3A is folded to the downward side of theplaten roller 66 by therelease plate 200. At this time, utilizing that the firm print-receivinglayer 3a cannot follow such a folded path, the print-receivinglayer 3a and theadhesive layer 3b are peeled off from theseparation material layer 3c as described above. The print-receivinglayer 3a and theadhesive layer 3b (in other words, the label mount L) that have been peeled off by therelease plate 200 as described above are discharged to the outside of thehousing 2 from the first dischargingexit 6A, and are used as print labels. It is to be noted that inFig. 4 , as described above, a feeding path of the print-receivinglayer 3a and theadhesive layer 3b that have been peeled off is shown by the alternate long and short dash line, and that a feeding path of the peeled-offseparation material layer 3c is shown by the broken line, respectively. - In the above described basic configuration and operation, a feature of the present embodiment lies in suppressing the coming-apart of the above described print-receiving
tape 3A in the radial direction in theroll containing part 4. Hereinafter, details of the feature will be explained in order. - As described above, the
roll 3 is rotatably supported by theroll containing part 4. During the operation of print formation (printing) as described above, theroll 3 rotates by the pull-out of the print-receivingtape 3A by means of the above describedplaten roller 66 in a state of being supported in theroll containing part 4. When the above described printing operation stops, rotation of theroll 3 also stops by the halt of the pull-out by means of the above describedplaten roller 66. When execution and stop of the printing operation are repeated, rotation and stop of theroll 3 are also reiterated. As a result, in theroll 3, the above described print-receivingtape 3A wound in the rolled form may come apart in the radial direction. In a case where such coming-apart is generated, meandering of the print-receivingtape 3A occurs at the time of subsequent feeding, and there is a possibility of causing irregularity in print positions and deterioration of print quality. - Consequently, in the present embodiment, the
spring 400 is disposed on theroll containing part 4 as shown inFigs. 7 and8 . A detailed structure and function of thespring 400 will be explained usingFigs. 9 ,10A and 10B , and the above describedFigs. 7 and8 . - The
spring 400 is configured integrally with an elastic thin member, such as a film, in this example. Thisspring 400 includes, as shown inFig. 9 : a substantially plate-like base part 400a; a bent part 40Oc1 disposed on an end of thebase part 400a; a risingpart 400b disposed so as to rise from thebase part 400a through the bent part 400c1; a bent part 400c2 disposed on an end of the risingpart 400b; a foldedpart 400d; and alocking part 400e. - A concave part 400ab is disposed on one end side edge of the
base part 400a. This concave part 400ab has a width direction size that is slightly larger than the above described foldedpart 400d and is smaller than the lockingpart 400e. - The folded
part 400d is disposed folded so as to configure substantially an inverted V shape with the risingpart 400b through the bent part 400c2. The lockingpart 400e is disposed on a tip of the foldedpart 400d so as to have a width direction size wider than the above described risingpart 400b, bent parts 400e1 and 400c2, and foldedpart 400d that have a same width direction (corresponding to the above described right and left direction, the same hereinafter) size as one another. At this time, as shown inFigs. 8 and9 , closer to a forward side than the above describedfirst support roller 51 in theroll containing part 4, disposed are: aconcave part 4P for containing thespring 400; and aspring insertion hole 4Q disposed so as to downwardly penetrate theconcave part 4P. - The
spring insertion hole 4Q includes: an insertion part 4Qa having a width direction size substantially equal (slightly larger) to (than) the above described lockingpart 400e; and a part to be locked 4Qb that is located at substantially a downward side of the insertion part 4Qa and has a width direction size smaller than the insertion part 4Qa and the above described lockingpart 400e. Theconcave part 4P includes: a base part roll containing part 4Pa having a width direction size substantially equal (slightly larger) to (than) the above describedbase part 400a; and a bent part roll containing part 4Pb having a width direction size substantially equal (slightly larger) to (than) the above described bent part 400c1. - Additionally, at the time of attachment of the
spring 400 to theroll containing part 4, the above described lockingpart 400e is inserted in the above described insertion part 400Qa to be projected to a back side (i.e., a downward side) of theconcave part 4P in a state where the above described foldedpart 400d is introduced to the above described concave part 400ab and subsequently, the lockingpart 400e is further slid downwardly. Since the part to be locked 4Qb has the width direction size smaller than the insertion part 4Qa and the above described lockingpart 400e as described above, by the above, the lockingpart 400e becomes a state of being locked at a back side (i.e., a downward side) of the part to be locked 4Qb. After that, while maintaining an introduced and contained state of the above described foldedpart 400d to the above described concave part 400ab, thebase part 400a and the bent part 400c1 are introduced to the base part roll containing part 4Pa and the bent part roll containing part 4Pb, respectively, contained, and fixed. Due to this containment, a surface 400aa of thebase part 400a becomes substantially a same surface (a state of neither projecting nor denting) as a circular arc-shapedbottom surface 4A of theroll containing part 4. In addition, the insertion part 4Qa is blocked by the above described containment of thebase part 400a (refer toFig. 7 ), and thereby achieved is slip-off stop of the lockingpart 400e in the state of being locked at the back side of the part to be locked 4Qb as described above. - Due to the above described attachment state, the
spring 400 elastically deforms in a state where thebase part 400a is fixed to the base part roll containing part 4Pa (particularly, a bending angle of the bent part 400c1 changes), and thereby is displaced in a range from a state (refer toFig. 10A ) where the above described inverted V shape formed by the above described risingpart 400b, bent part 400c2, and foldedpart 400d is completely appeared in theroll containing part 4 to a state where the foldedpart 400d gets out to a downward side of the roll containing part 4 (refer toFig. 10B ). Consequently, when theroll 3 is contained in theroll containing part 4, thespring 400, as shown inFig. 10B , gets contact while always sliding with the outer peripheral surface of theroll 3 that is supported by the above describedsupport rollers spring 400 can elastically press theroll 3 from which the print-receivingtape 3A is fed out, inward in the radial direction of theroll 3. In this example, thespring 400 is arranged so as to be located closer to the forward side than thefirst support roller 51 in order to press an outer peripheral surface of a portion of theroll 3 closer to the forward side (left side inFigs. 10A and 10B ) than a roll center O (refer toFig. 10B ). - It is to be noted that at this time, as shown in
Fig. 11 , a roller width of the above describedpressing roller 31 is set to be smaller than an interval between the above describedguide members guide members roll 3 with a minimum tape width). Additionally, thespring 400 is, as illustrated, arranged so as to be located between theguide members guide members - As explained above, in the present embodiment, the
spring 400 elastically presses the rotatably supportedroll 3 inward in the radial direction (in the state where the print-receivingtape 3A has been fed out as described above). Consequently, the print-receivingtape 3A can be suppressed from coming apart in the radial direction as described above. As a result, the above described irregularity in print positions and deterioration of print quality can be suppressed. - In addition, particularly in the present embodiment, the
roll 3 is rotatably carried on thesupport rollers roll containing part 4. As described above, in printing operation, theroll 3 rotates by the pull-out of the print-receivingtape 3A, and thesupport rollers rotating roll 3. In a case of such a support mode, since theroll 3 becomes a state of not being constrained at all in the radial direction other than at contact points with thesupport rollers spring 400. - In addition, in a configuration in which the
roll 3 rotates in the state of being carried on thesupport rollers tape 3A is fed out from the upper side of theroll 3 as described above, and arrangement in which the print-receivingtape 3A is fed out from the lower side of theroll 3. Supposing a case where the print-receivingtape 3A is fed out from the lower side of theroll 3, carrying points of the above describedsupport rollers roll 3 acts on the feeding-out position and a vicinity thereof), and thus a possibility is relatively low that theroll 3 comes loose from thesupport rollers tape 3A is fed out from the upper side of theroll 3 as the above described embodiment, the self-weight as described above does not act on the feeding-out position and the vicinity thereof, and thus a possibility that a position of theroll 3 fluctuates because of the coming-loose of theroll 3 from thesupport rollers spring 400 also has an effect of being able to suppress position fluctuation of theroll 3 by the pressing in the radial direction in addition to the coming-apart suppression action as described above. - In addition, when the print-receiving
tape 3A is fed out from the upper side of theroll 3 in the above described manner, a force pulling theroll 3 in the pull-out direction (a force toward the forward side, i.e., the left side inFig. 4 ) may act due to the above described pull-out. Particularly in the present embodiment, thespring 400 presses in the radial direction the portion of the side closer to the above described pull-out direction than the roll center O of theroll 3. Consequently, theroll 3 can be pressed in a direction opposite to the pull-out direction although moving in the pull-out direction (forward) due to the above described force. As a result, the above described position fluctuation of theroll 3 can be reliably suppressed. - Meanwhile, along with the feeding-out of the print-receiving
tape 3A and consumption of the print-receivingtape 3A at the time of above described printing operation, an outer peripheral diameter of theroll 3 becomes gradually smaller from a maximum value to an intermediate value, and then to a minimum value. Here, supposing a configuration in which two support rollers having different positions in the peripheral direction with respect to theroll 3 are disposed in theroll containing part 4 instead of the above described threesupport rollers roll 3 can be stably supported by taking a large distance between these two support rollers even when the outer peripheral diameter of theroll 3 is large, there is a problem that theroll 3 drops off at the same time when the outer peripheral diameter of theroll 3 becomes smaller than a distance between the above described rollers, when the distance between the above described rollers is larger than the minimum value of the outer peripheral diameter of theroll 3. Meanwhile, although drop-off of theroll 3 can be suppressed by making smaller the distance between the two support rollers than the minimum value of the outer peripheral diameter of theroll 3, there is a problem in this case that theroll 3 cannot be stably supported when the outer peripheral diameter of theroll 3 is large. - Consequently, particularly in the present embodiment, three support rollers are disposed in the
roll containing part 4 in order of thefirst support roller 51, thesecond support roller 52, and thethird support roller 53 from the above described pull-out direction side toward the opposite side. Thesecond support roller 52 and thethird support roller 53 are arranged to have the positional relation of substantially horizontal to each other, and thefirst support roller 51 is arranged at the higher position than thesecond support roller 52 and the third support roller 53 (refer toFig. 4 etc.). Consequently, theroll 3 is supported by thefirst support roller 51 and thethird support roller 53 before the outer peripheral diameter of theroll 3 falls in a range from the maximum value to the intermediate value (a state shown inFig. 4 ), theroll 3 is supported by the three of thefirst support roller 51, thesecond support roller 52, and thethird support roller 53 when the outer peripheral diameter of theroll 3 becomes the intermediate value, and theroll 3 can be supported by thesecond support roller 52 and thethird support roller 53 until the outer peripheral diameter of theroll 3 becomes the minimum value after becoming smaller than the intermediate value. - As described above, the setting configurations of the support rollers that support the
roll 3 can be made to be different from each other according to the outer peripheral diameter of theroll 3. Since the distance between the rollers can be taken large by supporting theroll 3 by means of thefirst support roller 51 and thethird support roller 53 in the range before the outer peripheral diameter of theroll 3 becomes the intermediate value from the maximum value, which is the comparatively large range, theroll 3 can be stably supported. In addition, since theroll 3 is supported by thesecond support roller 52 and thethird support roller 53 in a range until the outer peripheral diameter of theroll 3 becomes the minimum value after becoming smaller than the intermediate value, which is the comparatively small range, drop-off of theroll 3 can be suppressed even though the outer peripheral diameter of theroll 3 becomes the minimum value by setting the distance between these rollers to be smaller than the minimum value of the outer peripheral diameter of theroll 3. Accordingly, in addition to the suppression effect of the position fluctuation of theroll 3 by means of the above describedspring 400, theroll 3 can be stably supported also by these first tothird support rollers - Furthermore, the following effects can be obtained when the outer peripheral diameter of the
roll 3 is the intermediate value. Namely, in the print-receivingtape 3A being fed out from theroll 3 due to the above described pull-out at the time of feeding, generally, the larger the outer peripheral diameter of theroll 3 is, and the more the number of support rollers that support theroll 3 is, the more increases a load on the feeding-out of the tape due to inertia by the self-weight of theroll 3 and friction of the support rollers, etc. When the load becomes larger than a predetermined value, feeding-out of the print-receivingtape 3A from theroll 3 is not performed smoothly, and there is a possibility of causing meandering of the print-receivingtape 3A and deterioration of print quality. - Particularly in the present embodiment, when the outer peripheral diameter of the
roll 3 becomes the intermediate value as described above, theroll 3 is supported by the three of thefirst support roller 51, thesecond support roller 52, and thethird support roller 53. Namely, the roll outer peripheral diameter in the case where the number of support rollers that support theroll 3 is the maximum number of three can be set as the intermediate value, and the tape load can be significantly reduced as compared with the case of the maximum value. As a result, the load at the time of feeding out the print-receivingtape 3A from theroll 3 can be reduced. As a result, in addition to the effects of meandering suppression and improvement in print quality by the above describedspring 400, similar effects of meandering suppression and improvement in print quality can be obtained also by these first tothird support rollers - In addition, particularly in the present embodiment, the pair of
guide members tape 3A fed out from theroll 3 and guides the print-receivingtape 3A is disposed in an approachable manner in the width direction of theroll 3. Consequently, even when plural types ofrolls 3 having various tape widths are used, each tape can be reliably guided from both sides in a width direction, and smooth tape feeding can be performed. In so doing, thespring 400 is, as shown inFig. 11 , arranged so as to be located between the pair ofguide members guide members spring 400 can be arranged at theroll containing part 4 without impeding a function of guiding the above described print-receivingtape 3A by making the above described pair ofguide members - It is to be noted that although in the above, has been explained as an example the configuration in which the
roll 3 is rotated and supported in theroll containing part 4 in a mode where thesupport rollers - In addition, although in the above, has been explained as an example the case where the print-receiving
layer 3a and theadhesive layer 3b in which printing has been finished are cut by thecutting blade 8 to produce print labels, the present invention is not limited to this. Namely, in a case where the label mounts L (so-called die-cut labels) previously separated as a desired size corresponding to a label are continuously arranged on the tape fed out from theroll 3, only the label mount (on which corresponding print has been made) may be peeled from the tape to produce a print label after the tape is discharged from the dischargingexit 6A without cutting the tape by thecutting blade 8, and the present invention can be applied also to the tape with the label mounts as described above. - In addition, although in the above, a system is employed in which printing is performed on the print-receiving
layer 3a included in the print-receivingtape 3A, the present invention is not limited to this, and the present invention may be applied to a system in which printing is performed on cover films different from the print-receivinglayer 3a, and the cover films are pasted. - In addition, a roll is not limited to a roll that can be attached and detached to/from a
label producing apparatus 1 main body side like the above describedroll 3, either, and it can be also considered that a roll is disposed as a so-called installation type or integrated type that cannot be attached and detached to/from the apparatus main body side. A similar effect is obtained also in this case. - In addition, although in the above, has been explained as an example of the printer the print label producing apparatus that performs desired printing on the print-receiving
tape 3A and produces print labels, the present invention is not limited to this. Namely, as one example of the printer, for example, the present invention may be applied to a printer that forms images and prints characters on usual print-receiving papers of sizes, such as an A4, A3, a B4, and B5 sizes, and a portable printer driven by a battery power source. A similar effect is obtained also in this case. - In addition, techniques by the above described embodiment and each modified example may be appropriately combined and utilized in addition to the examples already described above.
Claims (6)
- A printer (1) comprising:a roll supporting part (4) configured to rotatably support a print-receiving tape roll (3) that winds a print-receiving tape (3A) in a rolled form;feeding means (66) configured to pull out and feed said print-receiving tape (3A) of said print-receiving tape roll (3) supported by said roll supporting part (4);printing means (61) configured to perform desired print on said print-receiving tape (3A) that is fed out and fed from said print-receiving tape roll (3) by said pull-out of said feeding means (66); andurging means (400) configured to elastically press the print-receiving tape roll (3) supported by said roll supporting part (4) inward in a radial direction of said print-receiving tape roll (3) while said print-receiving tape (3A) being fed out.
- The printer (1) according to claim 1, wherein:said roll supporting part (4) is a roll containing part (4) configured to rotatably contain said print-receiving tape roll (3),the printer further comprises at least one support roller (51, 52, 53) in said containing part (4), the at least one support roller (51, 52, 53) being configured to rotate by getting contact with an outer peripheral surface of said print-receiving tape roll (3) and to rotatably carry the print-receiving tape roll (3), in said pull-out of said print-receiving tape (3A) being performed from said print-receiving tape roll (3) by said feeding means (66), whereinsaid urging means (400) performs said pressing while sliding to and being in contact with said outer peripheral surface of said print-receiving tape roll (3) that is supported by said at least one support roller (51, 52, 53) and rotates.
- The printer (1) according to claim 2, wherein:said roll containing part (4) contains said print-receiving tape roll (3) so that said print-receiving tape (3A) is fed out from an upper side of said print-receiving tape roll (3).
- The printer (1) according to claim 3, wherein:said urging means (400) is arranged at said roll containing part (4) so as to perform pressing to said outer peripheral surface of a portion positioned at the pull-out direction than a roll center in said print-receiving tape roll (3) that is supported by said at least one support roller (51, 52, 53) and rotates.
- The printer (1) according to claim 4, wherein:said at least one support roller (51, 52, 53) comprises three rollers (51, 52, 53) in which at least the two rollers (52, 53) are arranged so as to get contact with the outer peripheral surface of said print-receiving tape roll (3) in a range from a minimum diameter to a maximum diameter of said print-receiving tape roll (3),said three rollers (51, 52, 53) are arranged in order of a first roller (51), a second roller (52), and a third roller (53) from said pull-out direction toward an opposite side of the pull-out direction,said second roller (52) and said third roller (53) have a positional relation of substantially horizontal to each other, and said first roller (51) is arranged so as to be located at a higher position than said second roller (52) and said third roller (53),said urging means (400) is arranged at said roll containing part (4) so as to be located in said pull-out direction than said first roller (51).
- The printer (1) according to any one of claims 2 to 5, further comprising
a pair of guide members (20A, 20B) that is disposed in said roll containing part so as to be mutually approachable along a width direction of said print-receiving tape roll (3), and is configured to guide said print-receiving tape (3A) fed out from said print-receiving tape roll (3) by respectively getting contact with end surfaces of both sides of the print-receiving tape roll (3) in the width direction, wherein
said urging means (400) is disposed in said roll containing part (4) so as to be located between said pair of guide members (20A, 20B) when the pair of guide members (20A, 20B) is in a mutually closest state.
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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JP2013131862A JP6120070B2 (en) | 2013-06-24 | 2013-06-24 | Printing device |
Publications (2)
Publication Number | Publication Date |
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EP2818324A1 true EP2818324A1 (en) | 2014-12-31 |
EP2818324B1 EP2818324B1 (en) | 2016-11-02 |
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ID=50389957
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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EP14162651.5A Active EP2818324B1 (en) | 2013-06-24 | 2014-03-31 | Printer |
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US (1) | US9266366B2 (en) |
EP (1) | EP2818324B1 (en) |
JP (1) | JP6120070B2 (en) |
Families Citing this family (4)
Publication number | Priority date | Publication date | Assignee | Title |
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JP2015150754A (en) * | 2014-02-13 | 2015-08-24 | 三栄電機株式会社 | Paper guide mechanism of printer |
JP6701970B2 (en) | 2016-05-30 | 2020-05-27 | ブラザー工業株式会社 | Printer |
JP6787163B2 (en) * | 2017-02-08 | 2020-11-18 | ブラザー工業株式会社 | Printing equipment |
JP6996103B2 (en) * | 2017-03-31 | 2022-01-17 | セイコーエプソン株式会社 | Recording device |
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FR2865830B1 (en) * | 2004-01-30 | 2006-05-19 | Neopost Ind | SECURED EXTERNAL PRINT MODE MAIL POSTAGE SYSTEM |
PL2067627T3 (en) * | 2004-10-22 | 2011-07-29 | Sanford Lp | Printer |
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JP5407710B2 (en) * | 2009-09-30 | 2014-02-05 | ブラザー工業株式会社 | Label making device |
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JPH05177828A (en) * | 1991-12-29 | 1993-07-20 | Mita Ind Co Ltd | Ink-jet recorder |
JPH0776443A (en) * | 1993-09-10 | 1995-03-20 | Fujitsu Isotec Ltd | Paper roll holding device for printing device |
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Also Published As
Publication number | Publication date |
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EP2818324B1 (en) | 2016-11-02 |
US20140375738A1 (en) | 2014-12-25 |
JP2015006734A (en) | 2015-01-15 |
JP6120070B2 (en) | 2017-04-26 |
US9266366B2 (en) | 2016-02-23 |
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